CN220757972U - Spliced toy component - Google Patents

Spliced toy component Download PDF

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Publication number
CN220757972U
CN220757972U CN202322375441.7U CN202322375441U CN220757972U CN 220757972 U CN220757972 U CN 220757972U CN 202322375441 U CN202322375441 U CN 202322375441U CN 220757972 U CN220757972 U CN 220757972U
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China
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snap fastener
sheet
connecting rod
shaped substrate
double
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CN202322375441.7U
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Chinese (zh)
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陈亿满
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Individual
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Individual
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Abstract

A spliced toy component comprises a flaky substrate made of a bendable material, wherein the flaky substrate is provided with a plurality of double-head pressing fasteners; each double-ended snap fastener comprises two snap fastener single elements and a connecting rod, wherein the two snap fastener single elements are respectively connected to two ends of the connecting rod, the first snap fastener single element is exposed out of one surface of the sheet-shaped substrate, the second snap fastener single element is exposed out of the other surface of the sheet-shaped substrate, the sheet-shaped substrate is provided with a through hole for accommodating the connecting rod, the connecting rod is positioned in the through hole of the sheet-shaped substrate, and the part of the sheet-shaped substrate positioned at the periphery of the through hole is clamped between the first snap fastener single element and the second snap fastener single element. The utility model can splice by utilizing the snap fasteners, can finally splice various three-dimensional models or plane models, has no effort in the splicing process, and has stable spliced form and no loosening.

Description

Spliced toy component
Technical Field
The utility model relates to the technical field of toys, in particular to a spliced toy component.
Background
The splice toy is composed of a plurality of splice toy components, which can be temporarily combined into a combination body with a certain geometric shape or modeling through a splicing mode. The spliced toy can not only exercise the spatial thinking ability of children, but also exercise the hand-operated ability of children, and has interestingness and intelligence. The existing common spliced toy components are mainly plastic building blocks, but the splicing mode of the plastic building blocks is common and is unattractive due to the fact that the plastic building blocks occur for a long time. In addition, the plastic building block piece has the following problems: if the matching between the plastic building blocks is loose, the assembly is easy but the assembly is not firm; on the contrary, if the plastic building block pieces are matched tightly, the assembly is stable after the assembly but the assembly process is laborious (more difficult for young children).
On the other hand, no splice toy member for splicing by using snap fasteners has been found in the prior art. The snap fastener is a connecting part which is connected by utilizing the paired matching of the male fastener and the female fastener, is often used as a fastening connecting part (commonly known as a button) of daily necessities such as clothes, leather bags, backpacks, briefcases and the like, and can be generally made of metal or plastic, wherein the male fastener is provided with a disc and a convex column, the female fastener is provided with a disc and a concave hole, and the convex column of the male fastener is inserted into the concave hole of the female fastener during connection. In this document, the male and female fasteners are collectively referred to as snap fastener elements.
Disclosure of Invention
The utility model aims to overcome the defects and provide the spliced toy component which can be spliced by using the snap fasteners, can finally splice various three-dimensional models or plane models, has no effort in the splicing process, has stable spliced form and cannot be loosened.
The aim can be achieved according to the following scheme: a spliced toy component comprises a flaky substrate made of a bendable material, wherein the flaky substrate is provided with a plurality of double-head pressing fasteners; each double-ended snap fastener comprises two snap fastener single elements and a connecting rod, wherein the two snap fastener single elements are respectively connected to two ends of the connecting rod, the first snap fastener single element is exposed out of one surface of the sheet-shaped substrate, the second snap fastener single element is exposed out of the other surface of the sheet-shaped substrate, the sheet-shaped substrate is provided with a through hole for accommodating the connecting rod, the connecting rod is positioned in the through hole of the sheet-shaped substrate, and the part of the sheet-shaped substrate positioned at the periphery of the through hole is clamped between the first snap fastener single element and the second snap fastener single element.
Preferably, the thickness of the sheet-like substrate is 1 to 8 mm.
The first snap fastener element of the double-headed press fastener is a male fastener, and the second snap fastener element is a female fastener.
The two snap fastener single elements of the double-end snap fastener are male fasteners.
The utility model has the following advantages and effects:
1. when the toy is played, different spliced toy components can be spliced by utilizing the matching of the female buckle and the male buckle, and the basic splicing mode can be direct superposition, lap joint, head-to-tail connection (annular after head-to-tail connection), bending or folding and then connection; the individual splice toy members themselves may also be looped in an end-to-end fashion. Based on the basic splicing mode, a plurality of splicing modes can be comprehensively utilized, and finally, a plurality of three-dimensional models or plane models can be spliced.
2. Because the female fastener and the male fastener are matched, the assembling process and the disassembling process are not laborious, and the assembled form is stable and cannot be loosened.
3. Since the inner and outer snap fastener elements of the sheet-shaped base are provided at the same point, the inner snap fastener element may not be visible to the eye during operation, but the position of the inner snap fastener element can be determined by means of the outer snap fastener element (the outer snap fastener element refers to the snap fastener element that is in contact with the finger during operation, and often the inner snap fastener element is facing away from the operator during operation).
4. Since the connecting rod is provided between the snap fastener elements, even if the thickness of the sheet-shaped base is large, the transmission of the pressing force from the outer snap fastener element to the inner snap fastener element is not hindered during operation (if a button structure which is common in the market is adopted, since the thickness of the sheet-shaped base is large, the single snap fastener element can only be exposed on the inner side of the sheet-shaped base, and cannot be exposed on the outer side of the sheet-shaped base, and the sheet-shaped base is soft, so that the pressing force is hardly transmitted from the outer side surface of the sheet-shaped base to the snap fastener element).
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present utility model.
Fig. 2 is a schematic elevational view of the first embodiment shown in fig. 1.
Fig. 3 is a schematic cross-sectional structure of the first embodiment shown in fig. 1.
Fig. 4 is an exploded view of the structure shown in fig. 3.
Fig. 5 is a schematic perspective view of a second embodiment of the present utility model.
Fig. 6 is a schematic elevational view of the second embodiment shown in fig. 5.
Fig. 7 is a schematic cross-sectional structure of the second embodiment shown in fig. 5.
Fig. 8 is an exploded view of the structure shown in fig. 7.
Fig. 9 is a schematic perspective view of a third embodiment of the present utility model.
Fig. 10 is a schematic diagram of a splicing mode of the present utility model.
Fig. 11 is a schematic diagram of another splicing mode of the present utility model.
Fig. 12 is a schematic view of individual toy building elements being formed into a loop shape by itself in an end-to-end connection.
Fig. 13 is a schematic view of a splice toy member with a sheet-like base bent and folded to splice with another splice toy member.
Fig. 14 is a schematic view of a splicing effect of the present utility model.
Detailed Description
Example 1
A splice toy device as shown in fig. 1, 2, 3 and 4, comprising a sheet-like base 2 made of nonwoven fabric, the thickness of the sheet-like base being 3 mm; the flaky substrate 2 is provided with a plurality of double-headed press fasteners 1; each double-ended snap fastener comprises two snap fastener elements (a first snap fastener element is a male fastener 12, a second snap fastener element is a female fastener 11), a connecting rod 13, the male fastener 12 and the female fastener 11 are respectively connected to two ends of the connecting rod 13, wherein the male fastener 12 exposes one surface of the sheet-shaped base 2, the female fastener 11 exposes the other surface of the sheet-shaped base 2, the sheet-shaped base 2 is provided with a through hole 20 for accommodating the connecting rod, the connecting rod 13 is positioned in the through hole 20 of the sheet-shaped base, and a sheet-shaped base part 21 (shown in fig. 3, 4 and 8) positioned at the periphery of the through hole 20 is clamped between the male fastener 12 and the female fastener 11.
Example two
The second embodiment differs from the first embodiment in that the sheet-like base 2 of the second embodiment is longer in length, and in that both of the snap single elements of each of the double-headed pressing members 1 of the second embodiment are male members 12, as shown in fig. 5, 6, 7, 8. The structure of the remaining aspects of the second embodiment is the same as that of the first embodiment.
Example III
The third embodiment differs from the first embodiment in that the sheet-like base 2 of the third embodiment is circular in shape and is provided with only one double-headed pressing member 1, as shown in fig. 9. The structure of the third remaining aspect of the embodiment is the same as that of the first embodiment.
In the above embodiments, the thickness of the sheet-like base 2 may be changed to 1.2 mm, or may be changed to 5 mm, or 8 mm, or the like.
In the above embodiments, the sheet-like substrate made of the flexible material may be made of materials such as cloth, felt, rubber, leather, pvc flexible fabric, pvc plastic, eva, flexible polymer, etc., in addition to nonwoven fabric, and the double-ended snap fastener may be made of plastic or metal.
In the above embodiments, the shape of the sheet-like base may be not only an elongated shape or a circular shape, but also a square shape, a triangle shape, an X shape, a Y shape, a hexagon shape, or the like.
The flaky substrate can be composed of one or more layers; if the laminated substrate consists of multiple layers, the laminated substrates can be bonded together through an intermediate colloid or can be connected together through stitching.
The playing mode of the utility model is as follows: the basic splicing mode is to buckle the male buckle part 12 of the double-end pressing buckle part 1 of one splicing toy component into the female buckle part 11 of the double-end pressing buckle part 1 of the other splicing toy component, as shown in fig. 10, so as to realize the splicing and lap joint of the sheet-shaped substrate 2; multiple layers of the splice toy device may also be stacked, as shown in fig. 11. The two different double-headed pressing fasteners 1 of the same spliced toy member can be buckled to form a ring shape (shown in figure 12), or one spliced toy member can be bent and folded to be spliced with the other spliced toy member (shown in figure 13).
Based on the basic splicing mode, a plurality of basic splicing modes can be comprehensively utilized, and finally, a plurality of three-dimensional models or plane models can be spliced, such as the models of the swords spliced in fig. 14. Can be disassembled after assembly so as to splice out other models. After assembly, if only one connecting point is arranged between two spliced toy components, the two spliced toy components can rotate in multiple directions at the connecting point (namely the center point of the snap fastener single element), so that the torsional deformation of the modeling is realized.

Claims (4)

1. A splice toy device, characterized in that: comprises a flaky substrate made of a bendable material, wherein the flaky substrate is provided with a plurality of double-head pressing fasteners; each double-ended snap fastener comprises two snap fastener single elements and a connecting rod, wherein the two snap fastener single elements are respectively connected to two ends of the connecting rod, the first snap fastener single element is exposed out of one surface of the sheet-shaped substrate, the second snap fastener single element is exposed out of the other surface of the sheet-shaped substrate, the sheet-shaped substrate is provided with a through hole for accommodating the connecting rod, the connecting rod is positioned in the through hole of the sheet-shaped substrate, and the part of the sheet-shaped substrate positioned at the periphery of the through hole is clamped between the first snap fastener single element and the second snap fastener single element.
2. The splice toy member of claim 1, wherein: the thickness of the flaky substrate is 1-8 mm.
3. The splice toy member of claim 1 or 2, wherein: the first snap fastener element of the double-headed press fastener is a male fastener, and the second snap fastener element is a female fastener.
4. The splice toy member of claim 1 or 2, wherein: the two snap fastener single elements of the double-end snap fastener are male fasteners.
CN202322375441.7U 2023-09-01 2023-09-01 Spliced toy component Active CN220757972U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322375441.7U CN220757972U (en) 2023-09-01 2023-09-01 Spliced toy component

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322375441.7U CN220757972U (en) 2023-09-01 2023-09-01 Spliced toy component

Publications (1)

Publication Number Publication Date
CN220757972U true CN220757972U (en) 2024-04-12

Family

ID=90616835

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322375441.7U Active CN220757972U (en) 2023-09-01 2023-09-01 Spliced toy component

Country Status (1)

Country Link
CN (1) CN220757972U (en)

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